BAIT
NR1I2
BXR, ONR1, PAR, PAR1, PAR2, PARq, PRR, PXR, SAR, SXR
nuclear receptor subfamily 1, group I, member 2
GO Process (12)
GO Function (6)
GO Component (1)
Gene Ontology Biological Process
- drug export [IDA]
- exogenous drug catabolic process [IDA]
- gene expression [TAS]
- intracellular receptor signaling pathway [IDA]
- negative regulation of transcription, DNA-templated [IDA]
- positive regulation of transcription from RNA polymerase II promoter [IDA]
- positive regulation of transcription, DNA-templated [IDA]
- signal transduction [TAS]
- steroid metabolic process [TAS]
- transcription initiation from RNA polymerase II promoter [TAS]
- xenobiotic metabolic process [IDA]
- xenobiotic transport [IDA]
Gene Ontology Molecular Function- RNA polymerase II regulatory region sequence-specific DNA binding [IDA]
- RNA polymerase II transcription regulatory region sequence-specific DNA binding transcription factor activity involved in positive regulation of transcription [IDA]
- drug binding [IDA]
- ligand-activated sequence-specific DNA binding RNA polymerase II transcription factor activity [IDA]
- protein binding [IPI]
- transcription coactivator activity [TAS]
- RNA polymerase II regulatory region sequence-specific DNA binding [IDA]
- RNA polymerase II transcription regulatory region sequence-specific DNA binding transcription factor activity involved in positive regulation of transcription [IDA]
- drug binding [IDA]
- ligand-activated sequence-specific DNA binding RNA polymerase II transcription factor activity [IDA]
- protein binding [IPI]
- transcription coactivator activity [TAS]
Gene Ontology Cellular Component
Homo sapiens
PREY
SDF4
Cab45, SDF-4, RP5-902P8.6
stromal cell derived factor 4
GO Process (6)
GO Function (3)
GO Component (7)
Gene Ontology Biological Process
Gene Ontology Molecular Function
Gene Ontology Cellular Component
Homo sapiens
Two-hybrid
Bait protein expressed as a DNA binding domain (DBD) fusion and prey expressed as a transcriptional activation domain (TAD) fusion and interaction measured by reporter gene activation.
Publication
Toward an understanding of the protein interaction network of the human liver.
Proteome-scale protein interaction maps are available for many organisms, ranging from bacteria, yeast, worms and flies to humans. These maps provide substantial new insights into systems biology, disease research and drug discovery. However, only a small fraction of the total number of human protein-protein interactions has been identified. In this study, we map the interactions of an unbiased selection of ... [more]
Mol. Syst. Biol. Oct. 13, 2011; 7(0);536 [Pubmed: 21988832]
Throughput
- High Throughput
Curated By
- BioGRID